Earth-abundant Ni-Zn nanocrystals for efficient alkyne semihydrogenation catalysis
Abstract
Abstract The development of catalysts that are based on earth-abundant metals remains a grand challenge. Alloy nanocrystals (NCs) form an emerging class of heterogeneous catalysts, offering the promise of small, uniform catalysts with composition-control. Here, we report the synthesis of small Ni and bimetallic Ni-X (X= Zn, Ga, In) NCs for alkyne semihydrogenation catalysis. We show that Ni3Zn NCs are particularly reactive and selective under mild reaction conditions and at low loadings. While bimetallic NCs are all more selective than pure Ni NCs, Ni-Zn NCs also maintain excellent reactivity compared to Ni-Ga and Ni-In alloys. Ab-initio calculations can explain the differences in reactivity, indicating that, unlike Ga and In, Zn atoms interact with the substrates. We further show that Ni3Zn NCs are robust and tolerate a broad range of substrates, which may be linked to the favorable amine-terminated surface.
Article Details
Authors (9)
Jasper Clarysse
Materials and Device Engineering Group, Institute for Electronics, Department of Information Technology and Electrical Engineering
Jordan De Jesus Silva
Yunhua Xing
Seraphine B. X. Y. Zhang
Scott R. Docherty
Columbia University , , , ,
Nuri Yazdani
Materials and Device Engineering Group, Institute for Electronics, Department of Information Technology and Electrical Engineering
Maksym Yarema
Chemistry and Materials Design Group, Institute for Electronics, Department of Information Technology and Electrical Engineering
Christophe Copéret
Vanessa Wood
Materials and Device Engineering Group, Institute for Electronics, Department of Information Technology and Electrical Engineering